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Soil attribute data such as texture, bulk density and water content, in combination with penetration resistance obtained with a profile cone penetrometer on a 10-m grid, were used to describe soil materials and layers.
In creating soil layer models for our study site, we were challenged (i) to express vagueness of our soil data, while at the same time maintaining adherence to systematic classification principles, and (ii) to describe continuously the spatial distribution of soil materials and layers in three dimensions.
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A series of benchmark problems assess the applicability of this element for isotropic materials and layered composites.
Building nanocomposite architectures made of carbon materials and layered double hydroxides (LDHs) materials as high-efficiency and low-cost catalysts for oxygen evolution reaction (OER) is one of potential strategies for sustainable and clean water splitting.
An analysis of these responses indicate that when an incident stress pulse passes through a layered structure, a reduced stress amplitude and elongated pulse duration could be obtained with proper selection of materials and layer dimensions.
According to theoretical design calculations presented, further optimization of materials and layer thickness could reduce the resonance width while achieving even higher sensitivities, thereby creating a sensor with significantly better resolution than conventional SPR sensors.
To find proper combinations of materials, one needs to probe a large class of materials combinations and layer sizes.
Zeolite MCM-22 can form via a layered intermediate, which combines the potential of two classes of materials: zeolites and layered solids.
Nanolaminate is a composite structure formed by different stacking sequences of diverse materials, and the layer thickness is general at the nanometer scale [1 4].
The solution is valid for undulation amplitudes that are small compared to undulation wavelength, and it reproduces results reported earlier for homogeneous materials and bi-layers.
Case studies showed that the edge delamination by thermal stress could be impeded by properly selecting the coating materials and individual layer thicknesses.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com